CNRS, ENTPE, UMR5023 LEHNA, Univ Lyon, Université Claude Bernard Lyon 1, 69622, Villeurbanne, France.
CNRS, UMR5557 Écologie microbienne, Université de Lyon, Université Claude Bernard Lyon 1, 69622, Villeurbanne, France.
Environ Monit Assess. 2020 Oct 3;192(11):673. doi: 10.1007/s10661-020-08627-1.
Plant responses to heavy metals and their storage constitute a crucial step to understand the environmental impacts of metallic trace elements (MTEs). In controlled experiments, we previously demonstrated the tolerance and resilience of Japanese knotweed to soil artificial polymetallic contamination. Using the same experimental design, we tested here the effect of three individual MTEs on Fallopia × bohemica performance traits. Rhizome fragments from three different sites (considered as distinct morphotypes) were grown in a greenhouse for 1 month on a prairial soil artificially contaminated with either Cd, Cr (VI) or Zn at concentrations corresponding to relatively highly polluted soils. Our results confirmed the high tolerance of Bohemian knotweed to metal stress, though, plant response to MTE pollution was dependant on MTE identity. Bohemian knotweed was stimulated by Cr (VI) (increased root and aerial masses), did not display any measurable change in performance traits under Cd at the high dose of 10 mg kg, and uptook all MTEs in its rhizome, but only Zn was transferred to its aerial parts. We also highlighted changes in root secondary metabolism that were more accentuated with Zn, including the increase of anthraquinone, stilbene and biphenyl derivatives. These results compared to multi-contamination experiments previously published suggest complex interactions between metals and plant, depending principally on metal identity and also suggest a potential role of soil microbes in the interactions.
植物对重金属的反应及其储存构成了理解金属微量元素(MTEs)对环境影响的关键步骤。在控制实验中,我们之前证明了日本虎杖对土壤人工多金属污染的耐受性和弹性。在这里,我们使用相同的实验设计,测试了三种单独的 MTE 对菰属植物性能特征的影响。从三个不同地点(被认为是不同的形态型)采集的根茎片段在温室中生长了一个月,在 prairial 土壤上进行了人工污染,土壤中含有 Cd、Cr(VI)或 Zn,浓度相当于污染程度较高的土壤。我们的结果证实了菰属植物对金属胁迫的高度耐受性,但植物对 MTE 污染的反应取决于 MTE 的身份。菰属植物受到 Cr(VI)的刺激(增加了根和地上部分的质量),在高剂量 10mg/kg 的 Cd 下,其性能特征没有任何可测量的变化,并且在其根茎中吸收了所有的 MTE,但只有 Zn 被转移到了地上部分。我们还强调了根次生代谢的变化,这些变化在 Zn 存在下更为明显,包括蒽醌、芪和联苯衍生物的增加。与之前发表的多污染实验相比,这些结果表明金属和植物之间存在复杂的相互作用,这主要取决于金属的身份,也表明土壤微生物在相互作用中可能发挥作用。